Engineering relaxors by entropy for high energy storage performance

Bingbing Yang, Qinghua Zhang, Houbing Huang, Hao Pan, Wenxuan Zhu, Fanqi Meng, Shun Lan, Yiqian Liu, Bin Wei, Yiqun Liu, Letao Yang, Lin Gu, Long Qing Chen, Ce Wen Nan*, Yuan Hua Lin*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

111 引用 (Scopus)

摘要

Relaxor ferroelectrics are the primary candidates for high-performance energy storage dielectric capacitors. A common approach to tuning the relaxor properties is to regulate the local compositional inhomogeneity, but there is a lack of a quantitative evaluation way for compositional fluctuation in relaxors. Here we propose configurational entropy as an index for the quantitative evaluation of local compositional inhomogeneity. Our results reveal that the local inhomogeneity increases with the entropy via scanning transmission electron microscopy, and relaxor features are accordingly modulated. With the deliberate design of entropy, we achieve an optimal overall energy storage performance in Bi4Ti3O12-based medium-entropy films, featuring a high energy density of 178.1 J cm−3 with efficiency exceeding 80% and a high figure of merit of 913. By using the medium-entropy films as dielectric layers, we demonstrate a multilayer film capacitor prototype that outperforms conventional multilayer ceramic capacitors.

源语言英语
页(从-至)956-964
页数9
期刊Nature Energy
8
9
DOI
出版状态已出版 - 9月 2023

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